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Manganese oxide electrode with excellent electrochemical performance for sodium ion batteries by pre-intercalation of K and Na ions

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Version 2 2024-06-06, 07:43
Version 1 2017-07-24, 09:29
journal contribution
posted on 2024-06-06, 07:43 authored by M Feng, Q Du, L Su, G Zhang, G Wang, Z Ma, W Gao, X Qin, G Shao
Materials with a layered structure have attracted tremendous attention because of their unique properties. The ultrathin nanosheet structure can result in extremely rapid intercalation/de-intercalation of Na ions in the charge-discharge progress. Herein, we report a manganese oxide with pre-intercalated K and Na ions and having flower-like ultrathin layered structure, which was synthesized by a facile but efficient hydrothermal method under mild condition. The pre-intercalation of Na and K ions facilitates the access of electrolyte ions and shortens the ion diffusion pathways. The layered manganese oxide shows ultrahigh specific capacity when it is used as cathode material for sodium-ion batteries. It also exhibits excellent stability and reversibility. It was found that the amount of intercalated Na ions is approximately 71% of the total charge. The prominent electrochemical performance of the manganese oxide demonstrates the importance of design and synthesis of pre-intercalated ultrathin layered materials.

History

Journal

Scientific reports

Volume

7

Article number

2219

Pagination

0-8

Location

London, Eng.

Open access

  • Yes

eISSN

2045-2322

Language

eng

Publication classification

C1 Refereed article in a scholarly journal

Copyright notice

2017, The Authors

Issue

1

Publisher

Nature Publishing Group

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